Gao Hongchang, Xiang Yun, Sun Ninglei, Zhu Hang, Wang Yaqiang, Liu Maili, Ma Yuanye, Lei Hao
State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences, Wuhan 430071, PR China.
Neurochem Int. 2007 Jan;50(2):386-94. doi: 10.1016/j.neuint.2006.09.012. Epub 2006 Oct 30.
Ex vivo(1)H NMR spectroscopy was used to measure changes in the concentrations of cerebral metabolites in the prefrontal cortex (PFC) and hippocampus of rats subjected to repeated morphine treatment known to cause tolerance/dependence. The results show that repeated morphine exposure induces significant changes in the concentrations of a number of cerebral metabolites, and such changes are region specific. After 10 days of repeated morphine treatment, the concentration of gamma-aminobutyric acid (GABA) increased significantly in the PFC (20+/-11%), but decreased in the hippocampus (-31+/-12%), compared to control. In contrast, the glutamate (Glu) concentrations in both the PFC (-15+/-8%) and hippocampus (-13+/-4%) decreased significantly. Significant changes were also observed in the concentrations of hippocampal glutamine (Gln), myo-inositol, taurine, and N-acetyl aspartate. These morphine-induced changes were reversed during a subsequent 5-day withdrawal period. It is suggested that the observed concentration changes for Glu, Gln and GABA are most likely the result of a shift in the steady-state equilibrium of the Gln-Glu-GABA metabolic cycle. Changes in the metabolism of this neurotransmitter system might be part of the adaptive measures taken by the central nervous system in response to repeated morphine exposure and subsequent withdrawal.
采用离体氢核磁共振波谱法,测定反复给予吗啡导致耐受/依赖的大鼠前额叶皮质(PFC)和海马中脑代谢物浓度的变化。结果显示,反复给予吗啡会引起多种脑代谢物浓度的显著变化,且这种变化具有区域特异性。与对照组相比,反复给予吗啡10天后,PFC中γ-氨基丁酸(GABA)浓度显著升高(20±11%),而海马中GABA浓度降低(-31±12%)。相反,PFC(-15±8%)和海马(-13±4%)中的谷氨酸(Glu)浓度均显著降低。海马中的谷氨酰胺(Gln)、肌醇、牛磺酸和N-乙酰天门冬氨酸浓度也出现了显著变化。在随后5天的戒断期内,这些吗啡诱导的变化发生了逆转。研究表明,观察到的Glu、Gln和GABA浓度变化很可能是Gln-Glu-GABA代谢循环稳态平衡发生改变的结果。该神经递质系统代谢的变化可能是中枢神经系统对反复给予吗啡及随后戒断所采取的适应性措施的一部分。